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用于海洋应用的油棕树干胶合板抗腐烂和白蚁性能增强

Properties Enhancement of Oil Palm Trunk Plywood against Decay and Termite for Marine Applications.

作者信息

Che Ismail Atikah, Salim Sabiha, Md Tahir Paridah, Lee Seng Hua, Abd Ghani Muhammad Aizat, Al Edrus Syeed SaifulAzry, Ahmad Faisal Fadhlin Qayyum

机构信息

Faculty of Forestry and Environment, Universiti Putra Malaysia, Serdang 43400, Selangor, Malaysia.

Institute of Tropical Forestry and Forest Products, Universiti Putra Malaysia, Serdang 43400, Selangor, Malaysia.

出版信息

Polymers (Basel). 2022 Jun 30;14(13):2680. doi: 10.3390/polym14132680.

Abstract

Oil palm trunk (OPT) veneers have the potential to be used in the production of plywood for marine applications. However, OPT is not resistant to fungal decay and termites, limiting its use in the production of marine plywood. As a result, in this study, phenolic resin treatment was used to improve the biological durability of OPT and produce marine grade equivalent (MGE) plywood. The OPT veneer was treated with medium molecular weight phenol formaldehyde (MmwPF) resin. The results showed that MmwPF resin with a solid content of 30% resulted in higher weight percent gain and polymer retention. Veneers treated with 30% MmwPF resin were then pressed for more than 10 min at temperatures above 140 °C. Dimensional stability, shear strength, bending strength, fungal decay resistance, and termite resistance were all tested on the plywood produced. The results of this study revealed that MGE plywood has satisfactory bonding quality and excellent biological durability. Good bending strength was recorded for the MGE plywood with modulus of rupture and modulus of elasticity ranged between 31.03 and 38.85 MPa and 4110 and 5120 MPa, respectively. Rubberwood, as a reference sample in this study, is not durable (Class 5) against white rot fungi and is moderately durable (Class III) against subterranean termite attacks. Interestingly, MGE plywood produced in this study was found very durable (Class 1) against white rot fungi. It is also durable (Class II) and very durable (Class I) against termite attacks, depending on the pressing parameters employed. Based on their outstanding bonding quality, bending strength, and biological durability, the study confirmed the feasibility of OPT plywood for marine applications.

摘要

油棕树干(OPT)单板有潜力用于生产海洋应用胶合板。然而,OPT不耐真菌腐朽和白蚁侵蚀,这限制了其在海洋胶合板生产中的应用。因此,在本研究中,采用酚醛树脂处理来提高OPT的生物耐久性并生产海洋级等效(MGE)胶合板。OPT单板用中分子量酚醛(MmwPF)树脂进行处理。结果表明,固体含量为30%的MmwPF树脂导致更高的增重百分比和聚合物保留率。然后,用30% MmwPF树脂处理的单板在140℃以上的温度下压制成型超过10分钟。对所生产的胶合板进行尺寸稳定性、剪切强度、弯曲强度、抗真菌腐朽性和抗白蚁性测试。本研究结果表明,MGE胶合板具有令人满意的胶合质量和优异的生物耐久性。MGE胶合板的弯曲强度良好,其断裂模量和弹性模量分别在31.03至38.85 MPa和4110至5120 MPa之间。本研究中作为参考样品的橡胶木对白腐菌不耐久(5级),对地下白蚁攻击具有中等耐久性(III级)。有趣的是,本研究生产的MGE胶合板对白腐菌非常耐久(1级)。根据所采用的压制参数,它对白蚁攻击也具有耐久性(II级)和非常耐久性(I级)。基于其出色的胶合质量、弯曲强度和生物耐久性,该研究证实了OPT胶合板用于海洋应用具有可行性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b80b/9269078/6a94a42c0e65/polymers-14-02680-g001.jpg

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